Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions
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Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions
Summary
Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions is a doctoral thesis[1].
Key Facts
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions authored Daisuke Seto[2].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's instance of is recorded as doctoral thesis[3].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's publisher is recorded as UC Research Repository[4].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's DOI is recorded as 10.26021/8515[5].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's language of work or name is recorded as English[6].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's country of origin is recorded as New Zealand[7].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's publication date is recorded as +2019-00-00T00:00:00Z[8].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's main subject is recorded as environmental science[9].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's work available at URL is recorded as https://ir.canterbury.ac.nz/handle/10092/17398[10].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's Handle ID is recorded as 10092/17398[11].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's title is recorded as Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions[12].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's copyright holder is recorded as Daisuke Seto[13].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's thesis submitted to is recorded as University of Canterbury[14].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's on focus list of Wikimedia project is recorded as NZThesisProject[15].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's copyright status is recorded as copyrighted[16].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's online access status is recorded as open access[17].
- Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's thesis committee member is recorded as Marwan Katurji[18].
Body
Designation and Status
Dynamics of wildfire and atmospheric boundary layer interaction and implications for extreme fire behaviour under quiescent weather conditions's instance of is recorded as doctoral thesis[3].